Advances in Superconducting Qubit Readout and Reset
FOCUS · S75 · ID: 1067356
Presentations
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Parametric cQED: a new approach to realizing strong light-matter interactions
ORAL · Invited
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Publication: [1] Z. Xiao, E. Doucet, T. Noh, L. Ranzani, R.W. Simmonds, L.C.G. Govia, A. Kamal, Phys. Rev. Applied 18, 024009 (2022)<br>[2] T. Noh, Z. Xiao, K. Cicak, X. Y. Jin, E. Doucet, J. Teufel, J. Aumentado, L. C. G. Govia, L. Ranzani, A. Kamal, R. W. Simmonds, arXiv:2103.09277 (2021)
Presenters
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Zhihao Xiao
University of Massachusetts Lowell, University of Massachusetts-Lowell
Authors
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Zhihao Xiao
University of Massachusetts Lowell, University of Massachusetts-Lowell
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Taewan Noh
Quantum Circuits Inc
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Emery Doucet
University of Massachusetts-Lowell
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Leonardo Ranzani
Raytheon BBN Technologies, Raytheon BBN
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Luke C Govia
IBM TJ Watson Research Center, IBM Quantum
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Raymond W Simmonds
National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology Boulder
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Jose Aumentado
National Institute of Standards and Technology Boulder, National Institute of Standards and Technology
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Archana Kamal
University of Massachusetts-Lowell, University of Massachusetts Lowell
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Observation of Extremely Large Lamb Shift in a Multi-mode Circuit QED System in Deep-strong Coupling Regime
ORAL
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Publication: Planned paper: Z. Ao, S, Ashhab, et al.
Presenters
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Kouichi Semba
University of Tokyo, Tokyo, Japan, NICT
Authors
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Ziqiao Ao
National Institute of Information and Communications Technology, Waseda University
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Sahel Ashhab
National Institute of Information and Communications Technology (NICT), Koganei, Japan, National Institute of Information and Communications Technol, National Institute of Information and Communications Technology
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Fumiki Yoshihara
Tokyo University of Science, Tokyo, Japan, National Institute of Information and Communications Technology
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Tomoko Fuse
National Institute of Information and Communications Technology
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Kosuke Kakuyanagi
NTT Basic Research Laboratories, NTT Corporation, NTT Basic Research Labs
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Shiro Saito
NTT Corporation, NTT Basic Research Laboratories, NTT Corporation, NTT Basic Research Labs
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Ziqiao Ao
National Institute of Information and Communications Technology, Waseda University
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Kouichi Semba
University of Tokyo, Tokyo, Japan, NICT
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Measuring a superconducting qubit linearly decoupled from the readout resonator (1/2)
ORAL
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Presenters
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Wei Dai
Yale University
Authors
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Wei Dai
Yale University
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Sumeru Hazra
Yale University, Applied Physics Department, Yale University
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Zhixin Wang
Yale University, Zurich Instruments
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Rodrigo G Cortinas
Yale University
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Jayameenakshi Venkatraman
Yale University
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Xu Xiao
Yale University
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Alec W Eickbusch
Yale University
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Luigi Frunzio
Yale University
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Michel H Devoret
Yale University
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Measuring a superconducting qubit linearly decoupled from the readout resonator (2/2)
ORAL
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Presenters
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Sumeru Hazra
Yale University, Applied Physics Department, Yale University
Authors
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Sumeru Hazra
Yale University, Applied Physics Department, Yale University
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Wei Dai
Yale University
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Zhixin Wang
Yale University, Zurich Instruments
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Rodrigo G Cortinas
Yale University
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Jayameenakshi Venkatraman
Yale University
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Xu Xiao
Yale University
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Alec W Eickbusch
Yale University
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Luigi Frunzio
Yale University
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Michel H Devoret
Yale University
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Measurement-Induced State Transitions in a Superconducting Qubit: Part I, Experiment
ORAL
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Presenters
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Alexander M Opremcak
Google Quantum AI, Google LLC, University of Wisconsin - Madison
Authors
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Alexander M Opremcak
Google Quantum AI, Google LLC, University of Wisconsin - Madison
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Mostafa Khezri
Univ of Southern California, Google Quantum AI, Google LLC
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Jimmy Chen
Google LLC
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Andreas Bengtsson
Google LLC
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Ted C White
Google Quantum AI, Google, Google LLC
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Ofer Naaman
Google Quantum AI, Google LLC
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Daniel T Sank
Google Quantum AI, Google LLC
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Alexander Korotkov
Google Quantum AI, Google LLC
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Measurement-Induced State Transitions in a Superconducting Qubit: Part II, Theory
ORAL
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Presenters
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Mostafa Khezri
Univ of Southern California, Google Quantum AI, Google LLC
Authors
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Mostafa Khezri
Univ of Southern California, Google Quantum AI, Google LLC
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Alexander M Opremcak
Google Quantum AI, Google LLC, University of Wisconsin - Madison
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Jimmy Chen
Google LLC
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Andreas Bengtsson
Google LLC
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Ted C White
Google Quantum AI, Google, Google LLC
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Ofer Naaman
Google Quantum AI, Google LLC
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Daniel T Sank
Google Quantum AI, Google LLC
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Alexander Korotkov
Google Quantum AI, Google LLC
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Bolometric readout of superconducting qubits, Part 1/2
ORAL
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Publication: A. Gunyhó et al., Readout of a superconducting qubit using a nanobolometer, in preparation
Presenters
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András Gunyhó
QCD Labs, Aalto University, Aalto University, Finland, Aalto University
Authors
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András Gunyhó
QCD Labs, Aalto University, Aalto University, Finland, Aalto University
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Priyank Singh
QCD Labs, Aalto University, Aalto university, Aalto University
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Suman Kundu
QCD Labs, Aalto University, Aalto University
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Jian Ma
QCD Labs, Aalto University, Aalto University
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Wei Liu
IQM Quantum Computers, IQM Finland Oy, IQM
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Giacomo Catto
QCD Labs, Aalto University, Aalto University
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Sakari Niemelä
Aalto University
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Qiming Chen
QCD Labs, Aalto University, Aalto university, Aalto University
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Mikko Möttönen
IQM Quantum Computers, QCD Labs, Aalto University, Aalto University
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Bolometric readout of superconducting qubits, Part 2/2
ORAL
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Presenters
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Priyank Singh
QCD Labs, Aalto University, Aalto university, Aalto University
Authors
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Priyank Singh
QCD Labs, Aalto University, Aalto university, Aalto University
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András Gunyhó
QCD Labs, Aalto University, Aalto University, Finland, Aalto University
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Suman Kundu
QCD Labs, Aalto University, Aalto University
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Jian Ma
QCD Labs, Aalto University, Aalto University
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Wei Liu
IQM Quantum Computers, IQM Finland Oy, IQM
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Giacomo Catto
QCD Labs, Aalto University, Aalto University
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Sakari Niemelä
Aalto University
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Qiming Chen
QCD Labs, Aalto University, Aalto university, Aalto University
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Mikko Möttönen
IQM Quantum Computers, QCD Labs, Aalto University, Aalto University
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Measurement of critical photon number of the 2<sup>nd</sup> excited state of a Transmon qubit
ORAL
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Publication: [1]M. D. Reed et.al. "High-Fidelity Readout in Circuit Quantum Electrodynamics Using the Jaynes-Cummings Nonlinearity" (prl 2010)
Presenters
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JeaKyung Choi
Korea Adv Inst of Sci & Tech
Authors
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JeaKyung Choi
Korea Adv Inst of Sci & Tech
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Hyeok Hwang
Korea Adv Inst of Sci & Tech, KAIST
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Eunseong Kim
Korea Adv Inst of Sci & Tech
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Exploring dispersive qubit readout in the strong driving limit.
ORAL
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Presenters
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Luciano I Pereira
CSIC - Madrid
Authors
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Luciano I Pereira
CSIC - Madrid
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Novel wideband Purcell filters for circuit QED
ORAL
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Presenters
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Basil M Smitham
Princeton University
Authors
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Basil M Smitham
Princeton University
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Christie S Chiu
Princeton University
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Jeronimo G Martinez
Princeton University
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Andrew A Houck
Princeton University
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Rapid high-fidelity readout of a strongly Purcell-filtered transmon qubit
ORAL
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Publication: Y. Sunada et al., Phys. Rev. Applied 17, 044016 (2022).
Presenters
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Yoshiki Sunada
UTokyo
Authors
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Yoshiki Sunada
UTokyo
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Shuhei Tamate
RIKEN, RIKEN Center for Quantum Computing
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Peter Spring
University of Oxford, RIKEN
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Arjan F Van Loo
RIKEN
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Jesper Ilves
UTokyo
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Shingo Kono
Ecole Polytechnique Federale de Lausanne, EPFL, Ecole Polytechnique Federale de Lausanne (EPFL)
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Yasunobu Nakamura
The University of Tokyo; RIKEN Center for Quantum Computing, Univ of Tokyo, UTokyo
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Enhancing the Dispersive Interaction between a Qubit and Squeezed Photons
ORAL
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Presenters
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Marius Villiers
Laboratoire de Physique de l'Ecole normale supérieure, Inria, Ecole Normale Supérieure, Ecole Normale Superieure
Authors
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Marius Villiers
Laboratoire de Physique de l'Ecole normale supérieure, Inria, Ecole Normale Supérieure, Ecole Normale Superieure
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Clarke Smith
Ecole Normale Supérieure
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Alexandru Petrescu
INRIA
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Alvise Borgognoni
Mines ParisTech
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Matthieu Delbecq
Ecole Normale Superieure
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Alain Sarlette
INRIA, Inria Paris
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Mazyar Mirrahimi
Inria, INRIA, Inria Paris
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Philippe Campagne-Ibarcq
Inria, Ecole Normale Superieure
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Takis Kontos
Ecole Normale Supérieure, CNRS
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Zaki Leghtas
Mines ParisTech
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